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解决环境问题的纳米修复策略。

Nanoremediation strategies to address environmental problems.

作者信息

Rather Muzamil Ahmad, Bhuyan Shuvam, Chowdhury Ratan, Sarma Rahul, Roy Subham, Neog Panchi Rani

机构信息

Department of Molecular Biology and Biotechnology, Tezpur University, Napaam, Tezpur 784028, Assam, India.

Department of Molecular Biology and Biotechnology, Tezpur University, Napaam, Tezpur 784028, Assam, India.

出版信息

Sci Total Environ. 2023 Aug 15;886:163998. doi: 10.1016/j.scitotenv.2023.163998. Epub 2023 May 10.

Abstract

A rapid rise in population, extensive anthropogenic activities including agricultural practices, up-scaled industrialization, massive deforestation, etc. are the leading causes of environmental degradation. Such uncontrolled and unabated practices have affected the quality of environment (water, soil, and air) synergistically by accumulating huge quantities of organic and inorganic pollutants in it. Environmental contamination is posing a threat to the existing life on the Earth, therefore, demands the development of sustainable environmental remediation approaches. The conventional physiochemical remediation approaches are laborious, expensive, and time-consuming. In this regard, nanoremediation has emerged as an innovative, rapid, economical, sustainable, and reliable approach to remediate various environmental pollutants and minimize or attenuate the risks associated with them. Owing to their unique properties such as high surface area to volume ratio, enhanced reactivity, tunable physical parameters, versatility, etc. nanoscale objects have gained attention in environmental clean-up practices. The current review highlights the role of nanoscale objects in the remediation of environmental contaminants to minimize their impact on human, plant, and animal health; and air, water, and soil quality. The aim of the review is to provide information about the applications of nanoscale objects in dye degradation, wastewater management, heavy metal and crude oil remediation, and mitigation of gaseous pollutants including greenhouse gases.

摘要

人口的快速增长、包括农业活动、工业化升级、大规模森林砍伐等在内的广泛人为活动,是环境退化的主要原因。这种不受控制且有增无减的活动通过在环境中累积大量有机和无机污染物,协同影响了环境质量(水、土壤和空气)。环境污染正对地球上现存的生命构成威胁,因此,需要开发可持续的环境修复方法。传统的物理化学修复方法费力、昂贵且耗时。在这方面,纳米修复已成为一种创新、快速、经济、可持续且可靠的方法,用于修复各种环境污染物,并将与之相关的风险降至最低或减轻。由于其独特的性质,如高比表面积、增强的反应性、可调节的物理参数、多功能性等,纳米级物体在环境清理实践中受到了关注。当前的综述强调了纳米级物体在修复环境污染物以尽量减少其对人类、植物和动物健康以及空气、水和土壤质量的影响方面的作用。综述的目的是提供有关纳米级物体在染料降解、废水管理、重金属和原油修复以及减少包括温室气体在内的气态污染物方面的应用信息。

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